断路器
过电压
拓扑(电路)
模块化设计
电气工程
高压
电压
工程类
网格
国家(计算机科学)
计算机科学
数学
算法
操作系统
几何学
作者
Xiangyu Zhang,Zhanqing Yu,Rong Zeng,Yulong Huang,Biao Zhao,Zhengyu Chen,Yuemin Yang
标识
DOI:10.1109/mie.2019.2959076
摘要
High-voltage dc (HVdc) circuit breakers (CBs) are a key technology of multiterminal dc (MTdc) systems and grids. In this article, a state-of-the-art 500-kV hybrid CB (HCB) topology is proposed and compared with other existing HCB solutions. Implementing the topology includes three important components: a modular designed high-current bidirectional solid-state switch (SS), an ultrafast mechanical switch (MS) based on a Thomson (CCDC) equipment with no conduction loss, whose corresponding functional verification test results have been presented in detail. On this basis, the overall 500-kV HCB and a comprehensive experimental platform are developed. Detailed experiments, including 25-kA turn-off and reclosing experiments, are conducted. The HCB was found to be capable of breaking a 25-kA current in 2.7 ms with 800-kV overvoltage, which is on par with the level of leading CBs worldwide.
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